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大鼠皮层多传入神经反应相互作用的光遗传学研究。

Optogenetic study of the response interaction among multi-afferent inputs in the barrel cortex of rats.

机构信息

Department of Integrative Life Sciences, Tohoku University Graduate School of Life Sciences, Sendai, 980-8577, Japan.

Department of Physiology, Tohoku University Graduate school of Medicine, Sendai, 980-8575, Japan.

出版信息

Sci Rep. 2019 Mar 8;9(1):3917. doi: 10.1038/s41598-019-40688-2.

Abstract

We investigated the relationship between whisker mechanoreceptive inputs and the neural responses to optical stimulation in layer 2/upper 3 (L2/U3) of the barrel cortex using optogenetics since, ideally, we should investigate interactions among inputs with spatiotemporal acuity. Sixteen whisker points of a transgenic rat (W-TChR2V4), that expresses channelrhodopsin 2 (ChR2)-Venus conjugate (ChR2V) in the peripheral nerve endings surrounding the whisker follicles, were respectively connected one-by-one with 16 LED-coupled optical fibres, which illuminated the targets according to a certain pattern in order to evaluate interactions among the inputs in L2/U3. We found that the individual L2/U3 neurons frequently received excitatory inputs from multiple whiskers that were arrayed in a row. Although the interactions among major afferent inputs (MAIs) were negligible, negative interactions with the surrounding inputs suggest that the afferent inputs were integrated in the cortical networks to enhance the contrast of an array to its surroundings. With its simplicity, reproducibility and spatiotemporal acuity, the optogenetic approach would provide an alternative way to understand the principles of afferent integration in the cortex and should complement knowledge obtained by experiments using more natural stimulations.

摘要

我们使用光遗传学研究了触须机械感受输入与桶状皮层 L2/上 3 层(L2/U3)中对光刺激的神经反应之间的关系,因为理想情况下,我们应该用时空分辨率来研究输入之间的相互作用。在转基因大鼠(W-TChR2V4)的 16 个触须点中,在围绕触须毛囊的周围神经末梢表达了通道视紫红质 2(ChR2)-Venus 融合蛋白(ChR2V),将这 16 个触须点分别与 16 个与 LED 耦合的光纤连接,这些光纤根据一定的模式照亮目标,以评估 L2/U3 中输入之间的相互作用。我们发现,单个 L2/U3 神经元经常从排列成一行的多个触须中接收兴奋性输入。虽然主要传入输入(MAI)之间的相互作用可以忽略不计,但与周围输入的负相互作用表明传入输入在皮层网络中被整合,以增强对其周围的对比度。光遗传学方法具有简单、可重复和时空分辨率的特点,它为理解皮层传入整合的原理提供了一种替代方法,应该补充使用更自然刺激的实验所获得的知识。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ac4a/6408464/bffdc451cfab/41598_2019_40688_Fig1_HTML.jpg

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